4.8 Article

Simultaneously Enhanced Hydrophilicity and Stability of a Metal-Organic Framework via Post-Synthetic Modification for Water Vapor Sorption/Desorption

期刊

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/anie.202209034

关键词

Hydrophilicity; Metal-Organic Framework; Post-Synthetic Modification; Sorption; Water Harvesting

资金

  1. Independent Research and Development (IRAD) Fund from the Research and Exploratory Development Mission Area of the Johns Hopkins University Applied Physics Laboratory
  2. Catalysis Center for Energy Innovation, a U.S. Department of Energy-Energy Frontier Research Center [DE-SC0001004]
  3. U.S. Department of Energy (DOE), Office of Basic Energy Sciences, Division of Chemical Sciences, Geosciences and Biosciences [DE-FG02-17ER16362]
  4. U.S. Department of Energy (DOE) [DE-SC0001004] Funding Source: U.S. Department of Energy (DOE)

向作者/读者索取更多资源

In this study, a post-synthetic modification (PSM) method was used to enhance the hydrophilicity and water stability of MOF-808 by introducing di-sulfonic acid. The modified MOF-808 exhibited improved water sorption performance and stability compared to the unmodified MOF-808.
With increasing demands for high-performance water sorption materials, metal-organic frameworks (MOFs) have gained considerable attention due to their high maximum uptake capacities. In many cases, however, high overall capacity is not necessarily accomplishing high working capacity under operating conditions, due to insufficient hydrophilicity and/or water stability. Herein, we present a post-synthetic modification (PSM) of MOF-808, with di-sulfonic acids enhancing simultaneously its hydrophilicity and water stability without sacrificing its uptake capacity of approximate to 30 mmol g(-1). Di-sulfonic acid PSM enabled a shift of the relative humidity (RH) associated with a sharp step in water vapor sorption from 35-40 % RH in MOF-808 to below 25 % RH. While MOF-808 lost uptake capacity and crystallinity over multiple sorption/desorption cycles, the di-sulfonic acid PSM MOF-808 retained >80 % of the original capacity. PSM MOF-808 exhibited good hydrothermal stability up to 60 degrees C and high swing capacity.

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